Murata Electronics LQW18AN47NJ0ZD
Murata Electronics LQW18AN47NJ0ZD
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Murata Electronics LQW18AN47NJ0ZD

Manufacturer No:

LQW18AN47NJ0ZD

Manufacturer:

Murata Electronics

Utmel No:

1685-LQW18AN47NJ0ZD

Package:

-

ECAD Model:

Description:

FIXED IND

Quantity:

Unit Price: $0.112773

Ext Price: $0.11

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In Stock : 5355

Minimum: 1 Multiples: 1

Qty

Unit Price

Ext Price

  • 1

    $0.112773

    $0.11

  • 10

    $0.106390

    $1.06

  • 100

    $0.100368

    $10.04

  • 500

    $0.094686

    $47.34

  • 1000

    $0.089327

    $89.33

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Once the goods are shipped, estimated delivery time depends on the shipping methods you chose:

FedEx International, 5-7 business days.

The following are some common countries' logistic time.transport
  • Prepare productStep1:Prepare product
  • Vacuum packagingStep2:Vacuum packaging
  • Anti-static bagStep3:Anti-static bag
  • Individual packageStep4:Individual package
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LQW18AN47NJ0ZD information

Specifications
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Product Details
Murata Electronics LQW18AN47NJ0ZD technical specifications, attributes, parameters and parts with similar specifications to Murata Electronics LQW18AN47NJ0ZD.
  • Type
    Parameter
  • Lifecycle Status

    Lifecycle Status refers to the current stage of an electronic component in its product life cycle, indicating whether it is active, obsolete, or transitioning between these states. An active status means the component is in production and available for purchase. An obsolete status indicates that the component is no longer being manufactured or supported, and manufacturers typically provide a limited time frame for support. Understanding the lifecycle status is crucial for design engineers to ensure continuity and reliability in their projects.

    IN PRODUCTION (Last Updated: 2 weeks ago)
  • Factory Lead Time
    7 Weeks
  • Surface Mount

    having leads that are designed to be soldered on the side of a circuit board that the body of the component is mounted on.

    YES
  • Terminal Shape

    Terminal Shape in electronic components refers to the physical design of the connection points on the component that allow for electrical connections to be made. These terminals can come in various shapes such as pins, leads, pads, or terminals with specific configurations like surface mount or through-hole. The terminal shape is important as it determines how the component can be mounted on a circuit board or connected to other components. Different terminal shapes are used based on the specific requirements of the electronic circuit design and manufacturing process.

    ONE SURFACE
  • Shape/Size Description

    Shape/Size Description in electronic components refers to the physical dimensions and geometric characteristics of a component. This includes parameters such as length, width, height, and overall form factor, which can affect how the component fits within a circuit board or electronic enclosure. Proper identification of Shape/Size Description is crucial for ensuring compatibility with other components and for optimizing space in design layouts.

    RECTANGULAR PACKAGE
  • Core Material

    Core materials are produced in a variety of forms including end-grain balsa wood, PVC foam, urethane foam, non-woven core fabrics, and various types of honeycomb materials.

    Wirewound
  • Operating Temperature (Max.)
    125°C
  • Operating Temperature (Min.)
    -55°C
  • Special Features
    Q MEASURED AT 200 MHZ
  • Packaging

    Semiconductor package is a carrier / shell used to contain and cover one or more semiconductor components or integrated circuits. The material of the shell can be metal, plastic, glass or ceramic.

    Tape & Reel (TR)
  • Tolerance

    In electronic components, "tolerance" refers to the acceptable deviation or variation from the specified or ideal value of a particular parameter, such as resistance, capacitance, or voltage. It indicates the range within which the actual value of the component can fluctuate while still being considered acceptable for use in a circuit. Tolerance is typically expressed as a percentage or a specific value and is important for ensuring the accuracy and reliability of electronic devices. Components with tighter tolerances are more precise but may also be more expensive. It is crucial to consider tolerance when selecting components to ensure proper functionality and performance of the circuit.

    5%
  • JESD-609 Code

    The "JESD-609 Code" in electronic components refers to a standardized marking code that indicates the lead-free solder composition and finish of electronic components for compliance with environmental regulations.

    e3
  • Part Status

    Parts can have many statuses as they progress through the configuration, analysis, review, and approval stages.

    Active
  • Number of Terminations
    2
  • Terminal Finish

    Terminal Finish refers to the surface treatment applied to the terminals or leads of electronic components to enhance their performance and longevity. It can improve solderability, corrosion resistance, and overall reliability of the connection in electronic assemblies. Common finishes include nickel, gold, and tin, each possessing distinct properties suitable for various applications. The choice of terminal finish can significantly impact the durability and effectiveness of electronic devices.

    Matte Tin (Sn) - with Nickel (Ni) barrier
  • Packing Method

    The packing method in electronic components refers to the technique used to package and protect the component during shipping and handling. It encompasses various forms including tape and reel, tray, tube, or bulk packaging, each suited for different types of components and manufacturing processes. The choice of packing method can affect the ease of handling, storage, and the efficiency of assembly in automated processes. Additionally, it plays a crucial role in ensuring the reliability and integrity of the components until they are used in electronic devices.

    TR, Paper, 7 Inch
  • Shielding

    Shielding in electronic components refers to the practice of enclosing or surrounding sensitive electronic circuits or components with a conductive material to protect them from electromagnetic interference (EMI) or radio frequency interference (RFI). The shielding material acts as a barrier that blocks or absorbs unwanted electromagnetic signals, preventing them from affecting the performance of the electronic device. Shielding can be achieved using materials such as metal enclosures, conductive coatings, or shielding tapes. Proper shielding is essential in electronic design to ensure the reliable operation of electronic devices in environments where electromagnetic interference is present.

    NO
  • Number of Functions
    1
  • Reach Compliance Code

    Reach Compliance Code refers to a designation indicating that electronic components meet the requirements set by the Registration, Evaluation, Authorization, and Restriction of Chemicals (REACH) regulation in the European Union. It signifies that the manufacturer has assessed and managed the chemical substances within the components to ensure safety and environmental protection. This code is vital for compliance with regulations aimed at minimizing risks associated with hazardous substances in electronic products.

    compliant
  • Reference Standard

    In the context of electronic components, the term "Reference Standard" typically refers to a specific set of guidelines, specifications, or requirements that serve as a benchmark for evaluating the quality, performance, and characteristics of the component. These standards are established by organizations such as the International Electrotechnical Commission (IEC), the Institute of Electrical and Electronics Engineers (IEEE), or specific industry bodies.Reference standards help ensure consistency and interoperability among different components, as they provide a common framework for manufacturers, designers, and users to adhere to. They outline parameters such as electrical properties, mechanical dimensions, environmental conditions, and safety considerations that the component must meet to be considered compliant.By referencing these standards, manufacturers can design and produce components that meet industry-recognized criteria, which in turn helps users select the right components for their applications with confidence. Adhering to reference standards also facilitates regulatory compliance and promotes overall quality and reliability in electronic systems.

    AEC-Q200
  • Inductance

    Inductance is a property of an electrical component that quantifies its ability to store energy in a magnetic field when electric current flows through it. It is measured in henries and indicates how much voltage is induced in the component as a result of a change in current. Inductance is an essential characteristic in coils, inductors, and transformers, affecting the behavior of electrical circuits, particularly in alternating current applications. Higher inductance values usually correlate with larger coils or more turns of wire in the component.

    0.047 µH
  • Test Frequency

    a statistical procedure for assessing data that contain counts or the numbers of occurrences of various categories or classes.

    100MHz
  • DC Resistance (DCR)

    DC Resistance (DCR) is a measure of the resistance of an electronic component when a direct current (DC) is applied. It quantifies how much opposition the component presents to the flow of electrical current under steady-state conditions. DCR is crucial for understanding power loss, heating, and efficient performance in circuits, as it affects the overall behavior of components such as inductors, transformers, and resistors. Lower DCR values typically indicate better efficiency and performance in a given application.

    0.29Ohm
  • Inductor Application

    Inductor application refers to the various uses of inductors in electronic circuits. Inductors are passive components that store energy in a magnetic field when electrical current passes through them. They are commonly used for filtering, energy storage, and in oscillators. Inductors also play a crucial role in inductive coupling and in transforming voltage levels in power supplies and signal processing applications. Their ability to resist changes in current makes them essential for managing current flow and reducing noise in electronic systems.

    RF INDUCTOR
  • Terminal Placement

    Terminal Placement in electronic components refers to the physical location of the terminals or connection points on the component where external electrical connections are made. The placement of terminals is crucial for ensuring proper connectivity and functionality of the component within a circuit. It is important to consider factors such as spacing, orientation, and accessibility of terminals to facilitate easy installation and maintenance. Proper terminal placement also helps in reducing the risk of short circuits or other electrical issues. Overall, terminal placement plays a significant role in the design and usability of electronic components.

    DUAL ENDED
  • Quality Factor-Min (at L-nom)

    The Quality Factor-Min (at L-nom) is a parameter used to measure the quality of an electronic component, particularly in the context of inductors. It represents the minimum quality factor value of the component at its nominal inductance (L-nom). The quality factor, also known as Q factor, is a measure of the efficiency of an inductor in storing and releasing energy. A higher quality factor indicates lower energy losses and better performance. Therefore, the Quality Factor-Min (at L-nom) provides important information about the component's performance and efficiency under specific operating conditions.

    38
  • Inductor Type

    The parameter "Inductor Type" in electronic components refers to the specific design or construction of an inductor. Inductors are passive electronic components that store energy in a magnetic field when current flows through them. The type of inductor can vary based on factors such as the core material, winding configuration, and overall construction. Common types of inductors include air core, ferrite core, toroidal, and solenoid. Each type has its own characteristics and is chosen based on factors such as inductance value, current handling capability, and frequency response. Selecting the right inductor type is crucial for achieving desired performance in electronic circuits.

    GENERAL PURPOSE INDUCTOR
  • Case/Size Code

    The "Case/Size Code" parameter in electronic components refers to a standardized code that specifies the physical dimensions and package type of the component. This code helps in identifying the size and shape of the component, which is crucial for selecting the right component for a particular application and ensuring compatibility with the circuit board. The Case/Size Code typically consists of alphanumeric characters that represent specific dimensions and package styles, allowing engineers and manufacturers to easily reference and compare different components. Understanding the Case/Size Code is essential for proper component selection, placement, and soldering during the assembly process in electronic circuits.

    0603
  • Rated Current-Max

    Rated Current-Max in electronic components refers to the maximum current that the component can safely handle without being damaged or causing a malfunction. This parameter is crucial for determining the operational limits of the component and ensuring that it is used within its specified range. Exceeding the rated current-max can lead to overheating, component failure, or even pose a safety hazard. It is important to always refer to the component's datasheet or specifications to ensure that the rated current-max is not exceeded during operation.

    0.38A
  • Self Resonant Frequency

    The self resonant frequency of an inductor is the frequency at which the parasitic capacitance of the inductor resonates with the ideal inductance of the inductor resulting in an extremely high impedance. At this frequency the device looks like an open circuit.

    2600MHz
  • RoHS Status

    RoHS means “Restriction of Certain Hazardous Substances” in the “Hazardous Substances Directive” in electrical and electronic equipment.

    RoHS Compliant
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Download datasheets and manufacturer documentation for Murata Electronics LQW18AN47NJ0ZD.

Product Description: LQW18AN47NJ0ZD Fixed Inductor by Murata Electronics

1. Description

The LQW18AN47NJ0ZD is a high-frequency, general-purpose fixed inductor designed by Murata Electronics. This inductor is part of the company's extensive range of inductive components, specifically engineered for applications requiring high reliability and performance. The device features a rectangular package with dual-ended terminals, making it suitable for surface mount applications.

2. Features

  • Tolerance: The inductor has a tolerance of 5%, ensuring precise inductance values.
  • Test Frequency: The component is tested at 100 MHz, ensuring its performance under high-frequency conditions.
  • Terminal Shape and Placement: The inductor has one surface with dual-ended terminals, facilitating easy mounting and connection.
  • Terminal Finish: The terminals are finished with matte tin (Sn) and a nickel (Ni) barrier for enhanced durability and solderability.
  • Surface Mount Capability: Designed for surface mount technology (SMT), this inductor simplifies the manufacturing process.
  • Special Features: The quality factor (Q) is measured at 200 MHz, providing insights into its performance at higher frequencies.
  • Shielding: This inductor does not have any shielding, making it suitable for applications where minimal interference is required.
  • Self Resonant Frequency: The self-resonant frequency is 2600 MHz, indicating its ability to handle high-frequency signals without significant degradation.
  • RoHS Compliance: The LQW18AN47NJ0ZD is RoHS compliant, adhering to environmental regulations regarding hazardous substances.
  • AEC-Q200 Reference Standard: This inductor meets the AEC-Q200 standard for automotive applications, ensuring reliability in harsh environments.
  • Reach Compliance Code: Compliant with Reach regulations, ensuring safety and sustainability standards are met.
  • Rated Current-Max: The maximum rated current is 0.38 A, making it suitable for moderate current applications.
  • Quality Factor-Min (at L-nom): The minimum quality factor at nominal inductance is 38, indicating good performance in terms of energy storage and loss minimization.
  • Operating Temperature Range: The operating temperature range is from -55°C to 125°C, allowing for use in a variety of temperature conditions.

3. Applications

Primary Applications:
  1. RF Inductors: The LQW18AN47NJ0ZD is primarily designed as an RF inductor, making it ideal for applications such as filters, resonators, and matching networks in wireless communication systems.
  2. High-Frequency Filters: Its high self-resonant frequency makes it suitable for use in high-frequency filters where minimal signal degradation is crucial.
Secondary Applications:
  1. Power Supply Components: Due to its high quality factor and moderate current handling capability, this inductor can be used in power supply components like EMI filters or resonant circuits.
  2. Automotive Electronics: The AEC-Q200 compliance makes it suitable for use in automotive electronics where reliability under harsh conditions is essential.

4. Alternative Parts

If the LQW18AN47NJ0ZD is not available or does not meet specific requirements, alternative parts could include:

  1. Murata LQW18AN33NJ0ZD: This part has similar specifications but a lower inductance value (0.033 μH).
  2. Murata LQW18AN67NJ0ZD: This part has a higher inductance value (0.067 μH) but similar terminal characteristics.

5. Embedded Modules

The LQW18AN47NJ0ZD is commonly used in various embedded modules due to its compact size and high-performance characteristics:

  1. Wireless Communication Modules: Used in modules designed for wireless communication standards like Wi-Fi or Bluetooth.
  2. Automotive Control Units: Integrated into control units for automotive systems requiring high-frequency filtering and matching.
  3. Industrial Control Systems: Used in industrial control systems where precise filtering and matching are necessary.

In summary, the LQW18AN47NJ0ZD is a versatile fixed inductor designed for high-frequency applications with excellent performance characteristics suitable for a wide range of industries including automotive, industrial control systems, and wireless communication technologies.